首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Identification of Caspase-6-mediated processing of the valosin containing protein (p97) in Alzheimer's disease: a novel link to dysfunction in ubiquitin proteasome system-mediated protein degradation.
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Identification of Caspase-6-mediated processing of the valosin containing protein (p97) in Alzheimer's disease: a novel link to dysfunction in ubiquitin proteasome system-mediated protein degradation.

机译:鉴定阿尔茨海默病(P97)缬氨酸蛋白(P97)的Caspase-6介导的加工:一种新型链路与泛素蛋白酶体系系统介导的蛋白质降解的功能障碍。

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The valosin-containing protein (p97) is a ubiquitin-dependent ATPase that plays central roles in ubiquitin proteasome system (UPS)-mediated protein degradation pathways. p97 has been recently identified as a putative substrate of active Caspase-6 (Casp6) in primary human neurons. Since Casp6 is activated in mild cognitive impairment (MCI) and Alzheimer's disease (AD) patients' brains, the targeting of p97 by Casp6 may represent an important step that leads to UPS impairment in AD. Here, we show that p97 is a Casp6 substrate in vitro and in vivo. Casp6 cleavage of recombinant p97 generated two N-terminal fragments of 28 and 20 kDa, which were not generated by the other two effector caspases, Caspase-3 and Caspase-7. ATP binding to the D1 ATPase ring of p97 reduced the susceptibility of the N-domain to caspase-mediated proteolysis. Mass spectrometric analysis identified VAPD(179) as a Casp6 cleavage site within p97's N-domain. An anti-neoepitope serum immunohistochemically detected p97 cleaved at VAPD(179) in the cytoplasm of the cell soma and neurites of hippocampal neurons in MCI and AD. Overexpression of p97 (1-179) fragment, representing p97 cleaved at D179, impaired the degradation of model substrates in the ubiquitin-fusion degradation and the N-end rule pathways, and destabilized endogenous p97. Collectively, these results show that p97 is cleaved by Casp6 in AD and suggest p97 cleavage as an important mechanism for UPS impairment.
机译:含缬氨酸的蛋白质(P97)是泛素依赖于泛素依赖于泛素蛋白酶体系(UPS)介导的蛋白质降解途径中的中心作用。 P97最近被鉴定为原代人神经元中的活性Caspase-6(Casp6)的推定底物。由于Casp6以轻度认知障碍(MCI)和阿尔茨海默病(AD)患者的大脑激活,因此Casp6的P97的靶向可能代表一个重要的一步,导致广告中的UPS损伤。这里,我们表明P97是体外和体内的Casp6衬底。 Casp6重组P97的裂解产生28和20kDa的两种N-末端片段,其未被其他两个效应胱天冬酶,Caspase-3和Caspase-7产生。 ATP与P97的D1 ATP酶环的结合降低了N-结构域至半胱天冬酶介导的蛋白水解的敏感性。质谱分析确定VAPD(179)作为P97的N-结构域内的Casp6切割位点。在MCI和AD中,在MCI和AD中的细胞体系躯体躯体和海马神经元的细胞质中抗新型血清免疫组织化学检测P97裂解P97。 P97(1-179)片段的过表达代表在D179处切割的P97,在泛素融合劣化和N末端规则途径中的模型底物的降解损害,并且不稳定的内源P97。总的来说,这些结果表明,P97通过AD中的CASP6切割,并提出P97切割作为UPS损伤的重要机制。

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